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热解处理和提高受重质烃污染土壤的肥力。

Pyrolytic Treatment and Fertility Enhancement of Soils Contaminated with Heavy Hydrocarbons.

机构信息

Department of Civil and Environmental Engineering, ‡Department of Chemical and Biomolecular Engineering, and §Department of Earth Science, Rice University , Houston, Texas 77005, United States.

出版信息

Environ Sci Technol. 2016 Mar 1;50(5):2498-506. doi: 10.1021/acs.est.5b02620. Epub 2016 Feb 12.

Abstract

Pyrolysis of contaminated soils at 420 °C converted recalcitrant heavy hydrocarbons into "char" (a carbonaceous material similar to petroleum coke) and enhanced soil fertility. Pyrolytic treatment reduced total petroleum hydrocarbons (TPH) to below regulatory standards (typically <1% by weight) within 3 h using only 40-60% of the energy required for incineration at 600-1200 °C. Formation of polycyclic aromatic hydrocarbons (PAHs) was not observed, with post-pyrolysis levels well below applicable standards. Plant growth studies showed a higher biomass production of Arabidopsis thaliana and Lactuca sativa (Simpson black-seeded lettuce) (80-900% heavier) in pyrolyzed soils than in contaminated or incinerated soils. Elemental analysis showed that pyrolyzed soils contained more carbon than incinerated soils (1.4-3.2% versus 0.3-0.4%). The stark color differences between pyrolyzed and incinerated soils suggest that the carbonaceous material produced via pyrolysis was dispersed in the form of a layer coating the soil particles. Overall, these results suggest that soil pyrolysis could be a viable thermal treatment to quickly remediate soils impacted by weathered oil while improving soil fertility, potentially enhancing revegetation.

摘要

在 420°C 下对污染土壤进行热解,将难降解的重质烃转化为“炭”(一种类似于石油焦的碳质材料),并提高了土壤肥力。热解处理仅需焚烧所需能量的 40-60%(600-1200°C 时),就能在 3 小时内将总石油烃(TPH)降低到低于法规标准(通常<1%重量)以下。未观察到多环芳烃(PAHs)的形成,热解后的水平远低于适用标准。植物生长研究表明,在热解土壤中,拟南芥和生菜(辛普森黑籽生菜)的生物量产量更高(80-900%),比污染土壤或焚烧土壤更高。元素分析表明,热解土壤中的碳含量高于焚烧土壤(1.4-3.2%对 0.3-0.4%)。热解土壤和焚烧土壤之间的明显颜色差异表明,通过热解产生的碳质材料以层状形式分散在土壤颗粒表面。总的来说,这些结果表明,土壤热解可能是一种可行的热疗方法,可以快速修复受风化油影响的土壤,同时提高土壤肥力,可能会增强植被恢复。

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